ARTÍCULO
TITULO

Impacts of Consolidation Time on the Critical Hydraulic Gradient of Newly Deposited Silty Seabed in the Yellow River Delta

Meiyun Tang    
Yonggang Jia    
Shaotong Zhang    
Chenxi Wang and Hanlu Liu    

Resumen

The silty seabed in the Yellow River Delta (YRD) is exposed to deposition, liquefaction, and reconsolidation repeatedly, during which seepage flows are crucial to the seabed strength. In extreme cases, seepage flows could cause seepage failure (SF) in the seabed, endangering the offshore structures. A critical condition exists for the occurrence of SF, i.e., the critical hydraulic gradient (icr" role="presentation">??cricr i cr ). Compared with cohesionless sands, the icr" role="presentation">??cricr i cr of cohesive sediments is more complex, and no universal evaluation theory is available yet. The present work first improved a self-designed annular flume to avoid SF along the sidewall, then simulated the SF process of the seabed with different consolidation times in order to explore the icr" role="presentation">??cricr i cr of newly deposited silty seabed in the YRD. It is found that the theoretical formula for icr" role="presentation">??cricr i cr of cohesionless soil grossly underestimated the icr" role="presentation">??cricr i cr of cohesive soil. The icr" role="presentation">??cricr i cr range of silty seabed in the YRD was 8?16, which was significantly affected by the cohesion and was inversely proportional to the seabed fluidization degree. SF could ?pump? the sediments vertically from the interior of the seabed with a contribution to sediment resuspension of up to 93.2?96.8%. The higher the consolidation degree, the smaller the contribution will be.

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